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首页> 外文期刊>Estuarine Coastal and Shelf Science >Dynamics of size-fractionated phytoplankton biomass in a monsoonal estuary: Patterns and drivers for seasonal and spatial variability
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Dynamics of size-fractionated phytoplankton biomass in a monsoonal estuary: Patterns and drivers for seasonal and spatial variability

机译:季风河口规模化浮游植物生物量的动力学:季节和空间变异的模式和驱动因素

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Phytoplankton size-fractionated biomass is an important determinant of the type of food web functioning in aquatic ecosystems. Knowledge about the effect of seasonal salinity gradient on the size-fractionated biomass dynamics is still lacking, especially in tropical estuaries experiencing monsoon. The phytoplankton size-fractionated chlorophyll a biomass ( 3 mu m and 3 mu m) and picophytoplankton community structure were characterized in the monsoonal Zuari estuary, along the west coast of India, from October 2010 to September 2011 across the salinity gradient (0-35). On an annual scale, 3 mu m size-fraction was the major contributor to the total phytoplankton chlorophyll a biomass with the ephemeral dominance of 3 mu m size-fraction. During monsoon season, freshwater runoff and shorter water residence time resulted in a size-independent response. The lowest annual chlorophyll a biomass concentration of both size-fractions showed signs of recovery with increasing salinity downstream towards the end of the monsoon season. In contrast, the chlorophyll a biomass response was size-dependent during the non-monsoon seasons with the sporadic dominance ( 50%) of 3 mu m chlorophyll a biomass during high water temperature episodes from downstream to middle estuary during pre-monsoon and at low salinity and high nutrient conditions upstream during post-monsoon. These conditions also influenced the picophytoplankton community structure with picoeukaryotes dominating during the pre-monsoon, phycoerythrin containing Synechococcus during the monsoon and phycocyanin containing Synechococcus during the post-monsoon. This study highlights switching over of dominance in size-fractionated phytoplankton chlorophyll a biomass at intra, inter-seasonal and spatial scales which will likely govern the estuarine trophodynamics.
机译:浮游植物大小分级的生物量是决定水生生态系统功能的食物网类型的重要决定因素。仍然缺乏关于季节性盐度梯度对大小分级生物量动态变化影响的知识,尤其是在经历季风的热带河口中。 2010年10月至2011年9月在印度西海岸季风河口Zuari河口,盐度梯度范围内浮游植物大小分级的叶绿素a生物量(> 3μm和<3μm)和微微浮游植物群落结构特征(0 -35)。在年度尺度上,> 3微米大小级分是浮游植物总叶绿素a生物量的主要贡献者,其短暂主导地位<3微米大小级分。在季风季节,淡水径流和较短的水停留时间导致大小无关的响应。两个大小部分的最低年度叶绿素a生物量浓度都显示出恢复迹象,随着季风季节结束时下游盐度的增加。相比之下,在非季风季节,叶绿素a生物量的响应取决于大小,在季风前期和中期,从下游到中部河口的高温天气,在<3μm叶绿素a生物量的零星优势(> 50%)。在季风后上游处于低盐度和高营养条件下。这些条件也影响了微浮游植物的群落结构,季风爆发前以微核真核生物为主,季风爆发时含藻红蛋白的Synechococcus,季风后含有藻蓝蛋白的Syechococcus。这项研究强调了在季节内,季节间和空间尺度上大小分级的浮游植物叶绿素a生物质的优势转换,这很可能会控制河口的营养动力学。

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